• Title/Summary/Keyword: 지하실험시설

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KAERI Underground Research Tunnel (KURT) (한국원자력연구원 지하처분연구시설)

  • Cho, Won-Jin;Kwon, Sang-Ki;Park, Jeong-Hwa;Choi, Jong-Won
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.5 no.3
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    • pp.239-255
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    • 2007
  • An underground research tunnel is essential to validate the integrity of a high-level waste disposal system, and the safety of geological disposal. In this study, KAERI underground research tunnel(KURT) was constructed in the site of Korea Atomic Energy Research Institute(KAERI). The results of the site investigation and the design of underground tunnel were presented. The procedure for the construction permits and the construction of KURT were described briefly. The in-situ experiments being carried out at KURT were also introduced.

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Current Status and Tasks of Contaminant Migration Experiment Using Underground Research Laboratory (지하연구시설을 이용한 오염물질 이동실험 현황 및 과제)

  • Park, Chung-Kyun;Baik, Min-Hoon;Choi, Jong-Won
    • Tunnel and Underground Space
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    • v.17 no.1 s.66
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    • pp.17-25
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    • 2007
  • Research and development for disposal of contaminants including radioactive wastes in deep underground have been carried out from laboratory works. However, validation and reliability of the data from the laboratory are arguing issues because they are not obtained from real disposal situations. Underground research laboratory (URL) is not only a solution to overcome such limitations, but also a valuable facility for performance assessment as an engineering scale. However, it requires much budget, and environmental issues can give rise to social conflicts easily. Such considering points related to URL are discussed as well as current status of worldwide URLs are introduced. Furthermore study plans for solute transport in a small-scale underground research tunnel (KURT), which was authorized recently as an non-radioactive facility in Korea, also described.

Soil Replacement Method of Storage Facilities for Underground Reservoir (지하 저류시설의 토양 치환공법)

  • Lee, Jong-Seok;Lee, Seung-Young
    • Proceedings of the Korea Contents Association Conference
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    • 2013.05a
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    • pp.93-94
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    • 2013
  • 본 연구는 게릴라성 폭우 시 도심침수 방지를 위한 배수촉진 이원화 시설 구축공법을 개발하기 위한 것이다. 풍수기 지하수 함양을 통해 가뭄 시 지하수를 사용할 수 있는 지하저류 시설을 구축하는 공법이다. 이는 지하 토양의 공극을 양호한 재료로 치환, 저류량을 증대시켜 도심지 홍수 시 배수 보완시설로 활용하고, 농촌지역 가뭄 시 농업용수의 취수시설로 활용할 수 있다. 공법개발을 위한 토양치환 재료는 실내 현장실험을 통해 저류특성 증대효과를 분석하였다.

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Development of the Sub-soil Storage System for Utilization Urban Instream Flow of Rainfall Runoff (우수유출수의 도시하천 유지유량 활용을 위한 지하저류시스템 개발)

  • Choi, Gye-Woon;Choi, Jong-Young;Kim, Suk-Dong
    • Journal of Korea Water Resources Association
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    • v.37 no.2
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    • pp.163-172
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    • 2004
  • In this paper, the sub-soil storage system for utilizing urban instream flow of rainfall runoff was developed and examined through experiments. The artificial rainfall facility and sub-soil storage were installed in the experimental area. The effect of the water qualify improvement and the storage effect were analyzed through the several experiments. Through the experiments of rainfall intensity variation, which are the rainfall intensity of 20mm/hr, 30mm/hr, 40mm/hr, 50mm/hr was indicated SS concentration can be reduction until 68%. Also, the ration of the storage volume is varied from 42.8%∼79.9% based on the rainfall intensity. The reduction rate of the BOD, CO $D_{Mn}$, SS, T-N, T-P was 30%, 42%, 68%, 39%, 26%. As the result, water quality of runoff and efficient of runoff reduction by the system are much improved. The rainfall runoff with the installation of sub-soil storage could be used for instream flow.

Basic Design of the Underground Research Tunnel for HLW disposal Research (고준위폐기물 처분연구를 위한 지하연구시설에 대한 기본설계)

  • 권상기;박정화;조원진;한필수
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2004.06a
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    • pp.199-207
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    • 2004
  • In order to develop a safe geological disposal concept for the HLW from the nuclear power plants in Korea, it is necessary to evaluate the safety of the disposal concept in an underground research tunnel in the same geological formation as the host rock mass. The design concept of a research tunnel depends on the actual disposal concept, repository geometry, experiments to be carried at the tunnel, and geological conditions. In this study, geological investigation had been carried out to develop the basic design of the small scale underground disposal research tunnel in KAERI.

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Basic Design of the Underground Tunnel for the Research on High-level Waste Disposal (고준위폐기물 처분연구용 지하터널의 기본설계)

  • Cho Won-Jin;Kwon Sang-Ki;Park Jung-Hwa;Hahn Pil-Soo
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.2 no.4
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    • pp.279-292
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    • 2004
  • The underground research tunnel is essential to validate the integrity of a reference high-level waste disposal system, and the safety of geological disposal. In this study, a basic design of an underground research tunnel (URT) was tried to be developed. The candidate site for URT was described briefly, and it was intended to suggest the basic concept of the underground research tunnel. In order to develop the design of URT based on the basic concept, design requirements were established. Based on the basic concept and the design requirements, the basic design of URT was performed. Research items to be studied in the URT were also derived in this study.

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An Experimental Study on Change of Evacuation Critical Depth in Underground Space (실증실험기반 지하공간 침수 대피 한계수심 변화에 관한 연구)

  • Kim, Yerim;Keum, Hojun;Ko, Taekjo;Joo, Jaeseung;Jung, Dojoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.80-80
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    • 2021
  • 2020년은 장마와 태풍으로 인해 중부 및 남부지방에 폭우가 발생하여 강남역을 비롯한 지하철 역사와 지하 주차장 등 많은 지하시설이 침수되었고, 부산에서는 침수된 지하차도에 진입한 차량의 운전자가 사망하는 등의 사고가 발생하였다. 지하에 설치된 시설들은 침수가 발생할 경우 대부분 출입구를 통해 유입되는 물을 거슬러 대피해야 하므로 낙상과 그로 인한 익사 등 자칫 큰 인명피해를 초래할 수 있어 특별히 주의할 필요가 있다. 대피 여부를 결정하고 그에 필요한 시간을 계산하기 위해서는 안전하게 대피 가능한 최대수심(한계수심)을 결정하는 것이 필요하다. 현재 한계수심을 제시한 여러 연구가 있지만 대부분 소수의 성인만을 대상으로 한 실험 결과이기 때문에 성별, 연령, 체중 등 다양한 유형의 사람을 고려한 대피방법 제시가 필요하다. 이에 본 연구에서는 실험 참가자의 유형(성별, 연령, 체중, 신장)에 따른 대피시간의 차이를 고려한 한계수심을 제시할 수 있도록 하였다. 총 308명이 실험에 참여하였으며, 이중 남성은 164명, 여성은 144명이었다. 참가자의 연령은 14세부터 75세까지이며, 신장은 최소 145cm에서 최대 187cm, 체중은 35kgf에서 110kgf 범위이다. 대피시간은 물이 흘러 내려오는 5.1m 길이의 계단을, 난간을 잡은 채 거슬러 올라가는 시간으로 설정하였으며, 계단 상층부의 수심이 30cm일 때와 40cm일 때(한계수심 조건), 2회 측정하였다. 또한, 측정이 종료된 후, '안전하게 대피 가능할 것으로 예상되는 수심'을 선택하도록 하여 참가자가 체감한 실험 난이도를 간접적으로 확인하고 향후 연구에 활용할 수 있도록 하였다. 수집된 자료를 분석한 결과 여성의 경우 수심 30cm와 40cm의 평균 대피시간이 4초 정도의 차이가 나타났으나, 남성의 경우 유의미한 차이가 나타나지 않았다. 또한 '안전하게 대피 가능할 것으로 예상되는 수심'에 대한 답변으로 다수가 실험의 최대 수심 조건인 40cm 이상을 선택하였다. 이와 같은 결과를 보아, 실험의 난도가 높지 않았다고 예상할 수 있으며, 그 원인은 참가자의 안전을 고려해 실험 조건을 난간을 잡은 채 보행하도록 설정한 것이 한계수심을 증가시키는 결과를 가져왔다고 볼 수 있다. 유형에 따른 대피시간의 차이를 분석하기 위해서는 실험의 한계수심 조건을 높이거나, 난간을 잡지 않고 보행할 수 있도록 안전장치를 추가하는 등, 실험조건의 변화가 필요할 것으로 판단되며, 추가적으로 난간을 잡은 채 보행하는 것이 한계수심을 얼마나 높일 수 있는지에 대한 검토를 통하여 정량적인 대피가능 시간을 제시할 수 있을 것으로 사료된다.

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Monitoring Result of Rock Mass Behavior during Excavation of Deep Cavern (대심도 지하 공간 굴착시의 암반거동 - 일본 SUPER KAMIOKANDE의 사례 -)

  • Lee Hong-Gyu
    • Tunnel and Underground Space
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    • v.16 no.1 s.60
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    • pp.11-25
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    • 2006
  • The world's largest nucleon decay experiment facility is constructed at a depth of approximately 1,000 meters, in the Kamio Mine, Japan. The excavated cavern is consisted of a cylinder of 42.4 m high and a semi elliptical dome of 15.2 m high, with a bottom diameter of 40 m. The total excavation volume is approximately $69,000\;m^3$. Because of the character as a large cavern excavation in deep underground, there is many unknown factors in rock mechanics. Based on the results of rock test and numerical analysis, the monitoring of rock mass behavior accompanying progress of construction was performed by various instruments installed in the rock mass surrounding the cavern. The monitoring data was used in the study of measures for cavern stability.

Measurement of Thermal Expansion Coefficient of Rock using Strain Gauge (스트레인 게이지를 이용한 암석의 열팽창계수 측정)

  • Park, Chan;Kim, Hyung-Mok;Synn, Joong-Ho;Park, Yeon-Jun;Cheon, Dae-Sung
    • Tunnel and Underground Space
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    • v.17 no.6
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    • pp.475-483
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    • 2007
  • With increasing demand for LNG as energy resources and need for $CO_2$ sequestration as greenhouse gas, more storage facilities are required in Korea. Due to the recent acute safety concerns and land shortage, storage facilities tend to be located underground. In design and construction of underground storage for low and high temperature materials, besides their mechanical characteristics, the thermal characteristics of rock under temperature variation should be understood. In this study, laboratory experiments for the measurement of the thermal expansion coefficient of rock were performed using strain gauge in consideration of the particle size of mineral and experiment temperature range. Experiment results show that thermal expansion coefficient decreased as the temperature decreases. In addition, linear thermal expansion coefficient was developed for typical Korean rocks such as granite. The results of this study can be utilized for the evaluation of thermal propagation in rock mass and the thermo-mechanical stability of underground facilities.

Reduction Rate of the Total Runoff Volume though Installing a Rainfall Storage Tank in the Sub-Surface (지하 빗물저류시설의 설치에 따른 유출 저감 효과 분석)

  • Choi, Gye-Woon;Choi, Jong-Young;Li, Jin-Won
    • Journal of Korea Water Resources Association
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    • v.36 no.3 s.134
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    • pp.455-464
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    • 2003
  • In this paper, the experiments with installing a rainfall storage tank in the sub-surface were conducted and the reduction rates of the total runoff volume were investigated. The analysis were conducted based upon the variations of the rainfall intensity, surface coverage and surface slope. The reduction rate of the runoff volume was varied from 42.3% to 52.9% with the soil in the bank of the Seung Gi stream. In the experiments, the rainfall intensities were varied from 40mm/hr to 100mm/hr and the results indicate that the direct runoff reduction can be obtained with the installation of the rainfall storage tank in the sub-surface. The variation of the stored volume in the tank is very large in the mild slope but very small in the steep slope with over 3% slope. With this results, the reduction of the direct runoff volume for the longtime flood is expected with the installation of the rainfall storage tank in the region haying the steep slope such as the mountain area.